The ability to analyze large molecular structures by NMR techniques requires efficient methods for structure calculation. Currently, there are several widely available methods for tackling these problems, which, in general, rely on the optimization of penalty-type target functions to satisfy the con
Deterministic global optimization of molecular structures using interval analysis
β Scribed by Youdong Lin; Mark A. Stadtherr
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 129 KB
- Volume
- 26
- Category
- Article
- ISSN
- 0192-8651
No coin nor oath required. For personal study only.
β¦ Synopsis
Abstract
The search for the global minimum of a molecular potential energy surface is a challenging problem. The molecular structure corresponding to the global minimum is of particular importance because it usually dictates both the physical and chemical properties of the molecule. The existence of an extremely large number of local minima, the number of which may increase exponentially with the size of the molecule, makes this global minimization problem extremely difficult. A new strategy is described here for solving such global minimization problems deterministically. The methodology is based on interval analysis, and provides a mathematical and computational guarantee that the molecular structure with the global minimum potential energy will be found. The technique is demonstrated using two sets of example problems. The first set involves a relatively simple potential model, and problems with up to 40 atoms. The second set involves a more realistic potential energy function, representative of those in current use, and problems with up to 11 atoms. Β© 2005 Wiley Periodicals, Inc. J Comput Chem 26: 1413β1420, 2005
π SIMILAR VOLUMES
## Abstract In this paper, by combining the finite element analysis and nonβprobabilistic convex models, we present the numerical algorithm of nonβprobabilistic convex models and interval analysis method for the static displacement of structures with uncertainβbutβbounded parameters. Under the cond
A modified genetic algorithm approach has been applied to Ε½ . atomic Ar clusters and molecular water clusters up to H O . Several genetic 2 13 operators are discussed which are suitable for real-valued space-fixed atomic coordinates and Euler angles. The performance of these operators has been syst